US2023083827A1PendingUtilityA1
Systems and methods for identifying somatic mutations
Est. expiryApr 9, 2032(~5.7 yrs left)· nominal 20-yr term from priority
G16B 30/10G16B 30/00G16B 20/20
75
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Claims
Abstract
Systems and method for identifying somatic mutations can receive first and second sequence information, determine if a variant present in the first sequencing information is also present in the second sequence information, and identify variants present in the first sequence information are somatic mutations when the variant is either not present in the second sequence information or the presence of the variant in the second sequence information is likely due to a sequencing error.
Claims
exact text as granted — not AI-modified1 - 20 . (canceled)
21 . A non-transitory machine-readable storage medium comprising instructions which, when executed by a processor, cause the processor to perform a method for identifying a somatic mutation in nucleic acid sequence reads generated by a nucleic acid sequence analysis device, the method comprising:
receiving a first sequence information and a second sequence information at the processor, wherein the first sequence information represents the nucleic acid sequencing reads generated from a first sample in an NGS assay and the second sequence information represents the nucleic acid sequencing reads generated from a second sample in the NGS assay; identifying a variant in the first sequence information; determining if the variant is present in the second sequence information; determining, when the variant is present in the second sequence information, whether the variant in the second sequence information is due to sequencing error; determining first and second coverage levels of a position corresponding to the variant in the first and second sequence information; and identifying the variant as a somatic mutation when the variant in the second sequence information is due to sequencing error and the first and second coverage levels are above a coverage threshold.
22 . The non-transitory machine-readable storage medium of claim 21 , wherein the method further comprises identifying the variant as a somatic mutation when the variant is not present in the second sequence information and when the first and second coverage levels are not less than the coverage threshold.
23 . The non-transitory machine-readable storage medium of claim 21 , wherein the method further comprises identifying the variant as a low confidence somatic mutation when the variant is not present in the second sequence information and when the second coverage level is less than the coverage threshold.
24 . The non-transitory machine-readable storage medium of claim 21 , wherein the method further comprises identifying the variant as a low confidence somatic mutation when the first coverage level is less than the coverage threshold.
25 . The non-transitory machine-readable storage medium of claim 21 , wherein the method further comprises identifying the variant as a low confidence somatic mutation when the second coverage level is less than the coverage threshold.
26 . The non-transitory machine-readable storage medium of claim 21 , wherein the variant identified in the first sequence information is a low frequency variant.
27 . The non-transitory machine-readable storage medium of claim 21 , wherein the variant identified in the second sequence information has a low stringency.
28 . The non-transitory machine-readable storage medium of claim 21 , wherein the method further comprises determining a somatic call confidence value based on a probability that the variant identified in the first sequence information is a true variant and a probability that the variant identified in the second sequence information is a true variant.
29 . The non-transitory machine-readable storage medium of claim 21 , wherein the first sample comprises a tumor sample and the second sample comprises a non-tumor sample.
30 . The non-transitory machine-readable storage medium of claim 21 , wherein a first barcode sequence is associated with the nucleic acid sequencing reads from the first sample and a second barcode sequence is associated with the nucleic acid sequencing reads from the second sample.
31 . The non-transitory machine-readable storage medium of claim 30 , wherein the method further comprises:
classifying the nucleic acid sequencing reads corresponding to the first sample as the first sequence information based on the first barcode sequence; and classifying the nucleic acid sequencing reads corresponding to the second sample as the second sequence information based on the second barcode sequence.
32 . A method for identifying a somatic mutation, comprising:
attaching a first adapter including a barcode sequence to fragments of a first nucleic acid sample in an NGS assay; attaching a second adapter including a barcode sequence to fragments of a second nucleic acid sample in the NGS assay; sequencing the first and second nucleic acid samples substantially simultaneously to generate a plurality of reads; classifying the reads corresponding to the first nucleic acid sample as a first sequence information based on the first barcode sequence; classifying the reads corresponding to the second nucleic acid sample as a second sequence information based on the second barcode sequence; identifying a variant in the first sequence information; determining if the variant is present in the second sequence information; calculating, when the variant is present in the second sequence information, a likelihood that the variant is present in the second sequence information above an expected error rate; and identifying the variant as a somatic mutation when the likelihood is below a threshold.
33 . The method of claim 32 , wherein the first nucleic acid sample comprises a tumor sample and the second nucleic acid sample comprises a non-tumor sample.Join the waitlist — get patent alerts
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